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RSS FeedsStructural analysis on the active site architecture of the VapC toxin from Shigella flexneri (Proteins: Structure, Function, and Bioinformatics)

 
 

2 february 2016 09:15:44

 
Structural analysis on the active site architecture of the VapC toxin from Shigella flexneri (Proteins: Structure, Function, and Bioinformatics)
 


The VapC toxin from the Shigella flexneri 2a virulence plasmid pMYSH6000 belongs to the PIN domain protein family, which is characterized by a conserved fold with low amino acid sequence conservation. The toxin is a bona fide Mg2+-dependent ribonuclease and has been shown to target initiator tRNAfMet in vivo. Here, we present crystal structures of active site catalytic triad mutants D7A, D7N, and D98N of the VapC toxin in absence of antitoxin. In all structures, as well as in solution, VapC appears as a dimer. In the D98N structure, a Hepes molecule occupies both active sites of the dimer and comparison with the structure of RNase H bound to a DNA/RNA hybrid suggests that the Hepes molecule mimics the position of a target nucleotide. This article is protected by copyright. All rights reserved.


 
173 viewsCategory: Biochemistry, Bioinformatics
 
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